玻璃磨边水循环装置及玻璃磨边设备

By designing a water circulation device for glass edging, solid-liquid separation is achieved by utilizing the positional difference between the water storage tank and the overflow hole. This solves the problem of direct discharge of wastewater from glass edging machines, realizes the recycling of wastewater, and reduces production costs.

CN224509352UActive Publication Date: 2026-07-17信义玻璃(广西)有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
信义玻璃(广西)有限公司
Filing Date
2025-08-14
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing glass edging machines directly discharge wastewater containing glass powder and impurities generated during processing, leading to water waste and increased production costs.

Method used

Design a glass edging water circulation device, including a first water storage tank, a first pipe shell, and a second water storage tank. Wastewater is collected in the first water storage tank and undergoes preliminary sedimentation before entering the second water storage tank. Solid-liquid separation is achieved by utilizing the positional difference between the overflow hole and the outlet. Heavier glass powder and impurities are deposited at the bottom of the first inner cavity, while cleaner water flows into the second water storage tank through the overflow hole, thus realizing the recycling of wastewater.

Benefits of technology

This reduces the demand for fresh water, lowers water treatment costs, enables wastewater recycling, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请涉及玻璃加工技术领域,更具体地说,是涉及一种玻璃磨边水循环装置及玻璃磨边设备。该玻璃磨边水循环装置,包括:第一储水箱、第一管壳、和第二储水箱;第一储水箱具有第一内腔,第一储水箱具有与第一内腔相连通的溢水孔;第一管壳的至少部分结构位于第一内腔中,第一管壳具有第一出水口,第一出水口位于第一内腔中,在第一储水箱的高度方向上,第一出水口与第一内腔的腔底之间的距离小于溢水孔与第一内腔的腔底之间的距离,从玻璃磨边机流出的水流入第一管壳的管腔中;第二储水箱具有第二内腔,第二内腔用于存储从溢水孔流出的水,本申请降低了水处理成本,从而有效降低生产成本。
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Claims

1. A glass edging water circulation apparatus, characterized by, include: A first water storage tank, the first water storage tank having a first inner cavity, the first water storage tank having an overflow hole communicating with the first inner cavity; A first tube shell, at least a portion of the structure of the first tube shell is located in the first inner cavity, the first tube shell has a first water outlet located in the first inner cavity, and in the height direction of the first water storage tank, the distance between the first water outlet and the bottom of the first inner cavity is less than the distance between the overflow hole and the bottom of the first inner cavity, and water flowing out from the glass edging machine flows into the tube cavity of the first tube shell. A second water tank having a second inner cavity for storing water flowing out of the overflow hole.

2. The glass edging water circulation apparatus of claim 1, wherein, The glass edging water circulation device also includes a first overflow pipe, one end of which is connected to the overflow hole, and the other end of which extends into the second water storage tank.

3. The glass edging water circulation apparatus of claim 2, wherein, The glass edging water circulation device further includes a filter assembly, which is fixed to the second water storage tank; the other end of the first overflow pipe is located above the filter assembly, wherein water flowing out of the first overflow pipe flows into the second inner cavity through the filter assembly.

4. The glass edging water circulation apparatus of claim 3, wherein, The filter assembly includes a mesh frame and filter elements, the mesh frame having a support space, and the filter elements being disposed within the support space.

5. The glass edging water circulation apparatus of claim 1, wherein, The glass edging water circulation device also includes a water pump, which is used to deliver the water stored in the second inner cavity to the glass edging machine.

6. The glass edging water recycling apparatus of any one of claims 1-5, wherein, The first tube shell includes a first sub-section and a second sub-section, and one end of the first sub-section is connected to one end of the second sub-section; the glass edging water circulation device also includes a water inlet pipe, which is connected to the first sub-section, and the outlet of the water inlet pipe is connected to the cavity of the first tube shell, wherein water flowing out of the glass edging machine enters the water inlet pipe through the inlet of the water inlet pipe; The diameter of the second sub-part gradually decreases from one end of the second sub-part toward the other end of the second sub-part; The first outlet is located at the other end of the second sub-section.

7. The glass edging water recycling apparatus of claim 6, wherein, The glass edging water circulation device also includes a second overflow pipe, the inlet of which extends into the cavity of the first pipe shell, and the outlet of which is located outside the first pipe shell.

8. The glass edging water recycling apparatus of claim 7, wherein, In the height direction of the first water storage tank, the distance between the outlet of the second overflow pipe and the bottom of the first inner cavity is equal to the distance between the overflow hole and the bottom of the first inner cavity.

9. The glass edging water recycling apparatus of any one of claims 1-5, wherein, The glass edging water circulation device also includes a support frame, and the first tube shell is fixedly connected to the support frame.

10. A glass edging apparatus characterized by, include: A glass edging machine and a glass edging water circulation device as described in any one of claims 1-9, wherein water flowing out of the glass edging machine flows into a first inner cavity.